GHz WLAN/BT LTE Co-Existence Filter

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1 2.4 GHz WLAN/T LTE CoExistence Filter Applications WiFi banpass filter that enables the coexistence of (LTE/TDLTE) & WiFi Portable Hotspots WiFi Routers an LTE Gateways Smart Meters WiFi Access Points Small Cells Prouct Features x x. mm Functional lock Diagram Low Loss in WLAN ban with extene upper corner for inclusion of luetooth High Rejection in 3//7/41 bans Inustry leaing small size: x x.5 mm Performance over 4 to +95 ºC Single Ene operation RoHS compliant, Pbfree moule package Input 1 Top View Gn Output Gn General Description The is a highperformance, high power ulk Acoustic Wave (AW) banpass filter with extremely steep skirts, simultaneously exhibiting low loss in the WiFi ban an high nearin rejection in the approximate LTE bans. is specifically esigne to enable coexistence of WiFi an LTE signals within the same evice or in close proximity to one another. The uses common moule packaging techniques to achieve the inustry leaing size x x. mm footprint. The filter exhibits excellent power hanling capabilities. Note: Gn Pin Configuration Single Ene Pin No. Label 1 Input 4 Output 2,3,5 Function label 1. Pin 1 must be use for input. The large signal performance of this filter (power hanling an nonlinear response) is not symmetric Orering Information Part No. Description Package Part EV Evaluation boar Stanar T/R size = 15, units/reel Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

2 2.4 GHz WLAN/T LTE CoExistence Filter Absolute Maximum Ratings Parameter Rating Storage Temperature (1) 4 to +15 C RF Input Power (2) Electrical Specifications (1) +36 m Test conitions unless otherwise note: (2) 3 C to +85 C 1. Operation of this evice outsie the parameter ranges given may cause permanent amage. 2. Max CW signal applie for up to ms with no amage. Pin 1 must be use for input. The large signal performance of this filter (power hanling an nonlinear response) is not symmetric. Parameter (3) Conitions (4) Min Typ (5) Max Units Insertion Loss (6) Passban Ripple Rejection MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.1)(19 MHz sliing winow) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz MHz MHz MHz (7) 2 25 MHz (+25 to +85 C) (7) 2 25 MHz ( 3 to +25 C) (7) MHz (+25 to +85 C) (7) MHz ( 3 to +25 C) (7) MHz (7) MHz (7) 48 MHz 72 7 MHz pp Input /Output VSWR MHz 2. RF Input Power (8) MHz 24 m Source Impeance (9) (singleene) Ω Loa Impeance (9) (singleene) Ω 1. All specifications are base on the TriQuint schematic shown on page In prouction, evices will be teste at room temperature to a guarbane specification to ensure electrical compliance over temperature. 3. Electrical margin has been built into the esign to account for the variations ue to temperature rift an manufacturing tolerances. 4. An external impeance matching network with ±2 % tolerance will be necessary to achieve the state specifications. 5. Typical values are base on average measurements at room temperature. 6. Data is the integrate value of the linear sparameter over a 19 MHz range in the inicate ban at the specifie temperature. 7. Data is the integrate value of the linear sparameter over 5MHz range at the specifie temperature. 8. Input power applie for a minimum of 5, hrs. at 55 C in the frequency ban specifie. 9. This is the optimum impeance in orer to achieve the performance shown. Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

3 2.4 GHz WLAN/T LTE CoExistence Filter Electrical Specifications (1) Test conitions unless otherwise note: (2) 4 C to +95 C Parameter (3) Conitions (4) Min Typ (5) Max Units Insertion Loss (6) Passban Ripple Rejection MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.1)(19 MHz sliing winow) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz MHz MHz MHz (7) 2 25 MHz (+25 to +95 C) (7) 2 25 MHz ( 4 to +25 C) (7) MHz (+25 to +95 C) (7) MHz ( 4 to +25 C) (7) MHz (7) MHz (7) 48 MHz 72 7 MHz pp Input /Output VSWR MHz 2. RF Input Power (8) MHz 24 m Source Impeance (9) (singleene) Ω Loa Impeance (9) (singleene) Ω 1. All specifications are base on the TriQuint schematic shown on page In prouction, evices will be teste at room temperature to a guarbane specification to ensure electrical compliance over temperature. 3. Electrical margin has been built into the esign to account for the variations ue to temperature rift an manufacturing tolerances. 4. An external impeance matching network with ±2 % tolerance will be necessary to achieve the state specifications. 5. Typical values are base on average measurements at room temperature. 6. Data is the integrate value of the linear sparameter over a 19 MHz range in the inicate ban at the specifie temperature. 7. Data is the integrate value of the linear sparameter over 5MHz range at the specifie temperature. 8. Input power applie for a minimum of 5, hrs. at 55 C in the frequency ban specifie. 9. This is the optimum impeance in orer to achieve the performance shown. Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

4 2.4 GHz WLAN/T LTE CoExistence Filter Electrical Specifications (1) Parameter (3) Conitions (4) Min Typ (5) Max Units Test conitions unless otherwise note: (2) C to +7 C Insertion Loss (6) Passban Ripple Rejection MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.1)(19 MHz sliing winow) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz (WiFi Ch.1) MHz (WiFi Ch.2) MHz (WiFi Ch.1) MHz (WiFi Ch.12) MHz (WiFi Ch.13) MHz MHz MHz MHz (7) 2 25 MHz (+25 to +7 C) (7) 2 25 MHz ( to +25 C) (7) MHz (+25 to +7 C) (7) MHz ( to +25 C) (7) MHz (7) MHz (7) 48 MHz 72 7 MHz pp Input /Output VSWR MHz 1.9 RF Input Power (8) MHz 24 m Source Impeance (9) (singleene) Ω Loa Impeance (9) (singleene) Ω 1. All specifications are base on the TriQuint schematic shown on page In prouction, evices will be teste at room temperature to a guarbane specification to ensure electrical compliance over temperature. 3. Electrical margin has been built into the esign to account for the variations ue to temperature rift an manufacturing tolerances. 4. An external impeance matching network with ±2 % tolerance will be necessary to achieve the state specifications. 5. Typical values are base on average measurements at room temperature. 6. Data is the integrate value of the linear sparameter over a 19 MHz range in the inicate ban at the specifie temperature. 7. Data is the integrate value of the linear sparameter over 5MHz range at the specifie temperature. 8. Input power applie for a minimum of 5, hrs. at 55 C in the frequency ban specifie. 9. This is the optimum impeance in orer to achieve the performance shown. Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

5 2.4 GHz WLAN/T LTE CoExistence Filter Evaluation oar L1 4 L2 1. Matching component values shown are for the specifie TriQuint evaluation boar. Value ajustment may be require in en user prouct circuits epening on component manufacturer an PC material. 2. Top, mile & bottom layers: 1/2 oz copper, Substrates: FR4 ielectric,.62 thick, Finish plating: Nickel: µm thick, Gol:.3.2 µm thick, Hole plating: Copper min.8 µm thick Contact TriQuint for Gerber files ill of Material Reference Des. Value Description Manuf. Part Number U1 n/a 2.4 GHz WLAN/T filter TriQuint L1 1 nh Chip Inuctor, 21, ± 2 % Murata LQP3TH1NH2D L2 1 nh Chip Inuctor, 21, ± 2 % Murata LQP3TH1NH2D SMA N/A SMA connector Raiall PC n/a 3 Layer Multiple TD PC Mounting Pattern 3X All imensions are in millimeters. Angles are in egrees. 2. This rawing specifies the mounting pattern use on the TriQuint evaluation boar for this prouct. Some moification may be necessary to suit en user assembly materials an processes. 5X.5 2X X.25 Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

6 2.4 GHz WLAN/T LTE CoExistence Filter Performance Plots Test conitions unless otherwise note: Temp= +25 C Frequency Response Passban Response Frequency (MHz) Frequency (MHz) Wieban Response Input / Output Return Loss Frequency (MHz) Frequency (MHz) Input Smith Chart Output Smith Chart Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

7 2.4 GHz WLAN/T LTE CoExistence Filter Package Information, Marking an Dimensions Package Style: CSP Dimensions: x x. mm Package for Surface Mount Technology Terminations: Au plating.5 1.μm, over a 2 6μm Ni Plating Approximate weight 7mg Marking Coe uniquely ientifies Part Number M = Manufacturing site (lank for Apopka, C for Costa Rica) Date coe consists of: WW = 2 igit week, Y = last igit of year An asterisk (*) in front of the marking coe inicates prototype. All imensions shown are nominal in millimeters. Tape an Reel information Stanar T/R size = 15, units/reel. All imensions are in millimeters Ø ID ot Section AA.25 Ko Ø A 1.75 Ø12 Ø2.2 Ø Direction of travel.61 Ko Ko 4. Ø. A 3.5 Ko 8. (5 ) Section.61 Ko Ko = +/.5 (rige Height) Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

8 Prouct Compliance Information ESD Sensitivity Ratings Caution! ESDSensitive Device 2.4 GHz WLAN/T LTE CoExistence Filter Solerability Compatible with both leafree (26 C maximum reflow temperature) an tin/lea (245 C maximum reflow temperature) solering processes. ESD Class: TD Test: Human oy Moel (HM) Stanar: JEDEC JS1 ESD Class: TD Test: Charge Device Moel (CDM) Stanar: JEDEC JES2 MSL Rating MSL Rating: Level 3. Test: 26 C convection reflow Stanar: JEDEC Stanar IPC/JEDEC JSTD2 Refer to Solering Profile for recommene guielines. RoHs Compliance This part is compliant with EU 22/95/EC RoHS irective (Restrictions on the Use of Certain Hazarous Substances in Electrical an Electronic Equipment). This prouct also has the following attributes: Lea Free Halogen Free (Chlorine, romine) Antimony Free TPA (C 15 H 12 r 4 2 ) Free PFOS Free SVHC Free Contact Information For the latest specifications, aitional prouct information, worlwie sales an istribution locations: Web: Tel: customer.support@qorvo.com For information about the merger of RFMD an TriQuint as Qorvo: Web: For technical questions an application information: flapplication.engineering@tqs.com Important Notice The information containe herein is believe to be reliable. TriQuint makes no warranties regaring the information containe herein. TriQuint assumes no responsibility or liability whatsoever for any of the information containe herein. TriQuint assumes no responsibility or liability whatsoever for the use of the information containe herein. The information containe herein is provie "AS IS, WHERE IS" an with all faults, an the entire risk associate with such information is entirely with the user. All information containe herein is subject to change without notice. Customers shoul obtain an verify the latest relevant information before placing orers for TriQuint proucts. The information containe herein or any use of such information oes not grant, explicitly or implicitly, to any party any patent rights, licenses, or any other intellectual property rights, whether with regar to such information itself or anything escribe by such information. TriQuint proucts are not warrante or authorize for use as critical components in meical, lifesaving, or lifesustaining applications, or other applications where a failure woul reasonably be expecte to cause severe personal injury or eath. Preliminary Data Sheet: Rev of 8 Disclaimer: Subject to change without notice

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